​
Login / Signup
Fengyang He
ORCID
Publication Activity (10 Years)
Years Active: 2020-2024
Publications (10 Years): 8
Top Topics
Adaptive Control
Textured Surfaces
Machine Learning Models
Defect Detection
Top Venues
J. Ind. Inf. Integr.
Robotics Comput. Integr. Manuf.
Comput. Stat. Data Anal.
J. Intell. Manuf.
</>
Publications
</>
Haochen Mu
,
Fengyang He
,
Lei Yuan
,
Houman Hatamian
,
Philip Commins
,
Zengxi Pan
Online distortion simulation using generative machine learning models: A step toward digital twin of metallic additive manufacturing.
J. Ind. Inf. Integr.
38 (2024)
Haochen Mu
,
Fengyang He
,
Lei Yuan
,
Philip Commins
,
Donghong Ding
,
Zengxi Pan
A digital shadow approach for enhancing process monitoring in wire arc additive manufacturing using sensor fusion.
J. Ind. Inf. Integr.
40 (2024)
Fengyang He
,
Lei Yuan
,
Haochen Mu
,
Montserrat Ros
,
Donghong Ding
,
Zengxi Pan
,
Huijun Li
Research and application of artificial intelligence techniques for wire arc additive manufacturing: a state-of-the-art review.
Robotics Comput. Integr. Manuf.
82 (2023)
Yuxing Li
,
Joseph Polden
,
Zengxi Pan
,
Junyi Cui
,
Chunyang Xia
,
Fengyang He
,
Haochen Mu
,
Huijun Li
,
Lei Wang
A defect detection system for wire arc additive manufacturing using incremental learning.
J. Ind. Inf. Integr.
27 (2022)
Haochen Mu
,
Joseph Polden
,
Yuxing Li
,
Fengyang He
,
Chunyang Xia
,
Zengxi Pan
Layer-by-layer model-based adaptive control for wire arc additive manufacturing of thin-wall structures.
J. Intell. Manuf.
33 (4) (2022)
Fengyang He
,
Huixia Judy Wang
,
Yuejin Zhou
Extremal quantile autoregression for heavy-tailed time series.
Comput. Stat. Data Anal.
176 (2022)
Donghong Ding
,
Fengyang He
,
Lei Yuan
,
Zengxi Pan
,
Lei Wang
,
Montserrat Ros
The first step towards intelligent wire arc additive manufacturing: An automatic bead modelling system using machine learning through industrial information integration.
J. Ind. Inf. Integr.
23 (2021)
Lei Yuan
,
Zengxi Pan
,
Donghong Ding
,
Fengyang He
,
Stephen van Duin
,
Huijun Li
,
Weihua Li
Investigation of humping phenomenon for the multi-directional robotic wire and arc additive manufacturing.
Robotics Comput. Integr. Manuf.
63 (2020)